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Effect of Zr additions on crystal structures and mechanical properties of binary W-Zr alloys: A first-principles study

机译:Zr的添加对二元W-Zr合金的晶体结构和力学性能的影响:第一性原理研究

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摘要

The effect of zirconium alloying on the crystal structures and mechanical properties of binary tungsten-zirconium alloys is investigated in this study using the first-principles method. Firstly, we investigate the cell volumes, lattice constants, and formation energies of binary W1-xZrx (x = 5 0, 0.0625, 0.125, 0.1875, 0.25, and 0.5) alloys. It is shown that binary tungsten-zirconium alloys maintain BCC structures. When the concentration of zirconium atoms is lower than 12.5%, the structures of binary tungsten-zirconium alloys can be thermodynamically stable. The elastic constants of binary tungsten-zirconium alloys are calculated based on the optimized atomic lattice. Then, the elastic modulus and other mechanical parameters are deduced according to the relevant formulas. It is shown that the mechanical strength of binary tungsten-zirconium alloy decreases with an increasing concentration of zirconium atoms, which is lower than the mechanical strength of pure tungsten metal. However, the mechanical strength of binary tungsten-zirconium alloys is higher than that of pure zirconium metal. In addition, zirconium alloying can be effective in improving the ductility of pure tungsten metal.
机译:本文采用第一性原理研究了锆合金化对二元钨-锆合金晶体结构和力学性能的影响。首先,我们研究二元W1-xZrx(x = 5 0,0.0625,0.125,0.1875,0.25和0.5)合金的晶胞体积,晶格常数和形成能。结果表明,二元钨-锆合金保持BCC结构。当锆原子的浓度低于12.5%时,二元钨-锆合金的结构可以是热力学稳定的。基于优化的原子晶格,计算了二元钨-锆合金的弹性常数。然后,根据相关公式推导弹性模量和其他机械参数。结果表明,二元钨-锆合金的机械强度随着锆原子浓度的增加而降低,这低于纯钨金属的机械强度。然而,二元钨-锆合金的机械强度高于纯锆金属的机械强度。另外,锆合金化可以有效地提高纯钨金属的延展性。

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